Pakistan Science Abstracts
Article details & metrics
No Detail Found!!
Taxonomic and ecological implications of culm histology in family Poaceae
Author(s):
1. BIBI SADIA: Department of Plant Sciences, Quaid-i-Azam University Islamabad,,Pakistan
2. MUSHTAQ AHMAD: Department of Plant Sciences, Quaid-i-Azam University Islamabad, Pakistan ;Pakistan Academy of Sciences, Islamabad, Pakistan
3. ABDULAZIZ ABDULLAH ALSAHLI: Department of Botany and Microbiology, College of Science, King Saud University,Riyadh, 11451, Saudia Arabia,
4. ZABTA KHAN SHINWARI: Department of Plant Sciences, Quaid-i-Azam University Islamabad,,Pakistan
5. SARWAR KHAWAJA: Oxford Business College,Beaver House, 27-38 Hythe Bridge St, Oxford OX1 2EP,
6. BURKHAN AVUTKHANOV: Department of Plant Physiology and Microbiology, Samarkand State University by named Sharof Rashidov,Samarkand, 140101,Uzbekistan
7. SHAZIA SULTANA: Department of Plant Sciences, Quaid-i-Azam University Islamabad,,Pakistan
8. WAJIA NOOR: Department of Plant Sciences, Quaid-i-Azam University Islamabad,,Pakistan
Abstract:
Culm histology is significant diagnostic feature for the distinguishing and delimitation of taxa at species level. This research is conducted on culm anatomy of twenty-six grasses from arid to semiarid regions of Baluchistan (Saharo-Sindian ecoregion). Sections were prepared using shandon microtome. The outcomes revealed significant diagnostic qualitative and quantitative anatomical characteristics including number and arrangement of major and peripheral vascular bundles, central and marginal cavities, culm shape and outline, shapes and number of different types of cells, sclerification in vascular bundles. Culm shapes were terete, elliptical, quadrangular, and semiterete. In all studied taxa collateral closed vascular bundles were examined. Highest number of collective vascular bundles (55) and largest culm diameter was observed in C. divisus 2982.2µm length and 2500.6µm width. The smallest culm diameter was observed in A. cyanantha 401.2 µm. Vascular bundles were in the rows of 1-4. Taxonomic key based on qualitative anatomical features significantly discriminate the taxa down to species level. Quantitative variables are statistically analysed, collected them into a matrix and analysed their ability to delimit the studied taxa. PCA is strongly linked for epidermis, vascular bundles, sclerenchyma length and width. Loading and correlation plots determined highest correlation in culm diameter, chlorenchyma, parenchyma, sclerenchyma, vascular bundles and epidermis. Xylem exhibited minimum while phloem was negatively correlated. UPGMA dendrogram and PCA revealed the highest association among species under the same genera Aristida, Cenchrus, Dactyloctenium, except species of genus Eremopyrum, that showed wide variations on ordination. Highly significant difference among the means in ANOVA provided distinct quantitative features that were important for the discrimination among the studied taxa when combined with qualitative characters.
Page(s): 1101-1115
Published: Journal: Pakistan Journal of Botany, Volume: 57, Issue: 3, Year: 2025
Keywords:
anatomy , anatomy , grasses , Baluchistan , Grasses , Grasses , vascularization
References:
[1] Ahmad F.,Khan M.A.,Ahmad M.,Zafar M.,Nazir A.,Marwat S.K. .2009 .Taxonomic studies of grasses and their indigenous uses in the salt range area of Pakistan. , 8(2) : 231-249.
[2] Akhtar A.,Ahmad M.,Mahmood T.,Khan A.M.,Arfan M.,Abbas Q.,Zafar M.,Sultana S.,Batool R.,Fatima A. .2022 .Microscopic characterization of petiole anatomy of Asteraceous taxa of Western Himalaya‐Pakistan. Microsc Res Tech. , 85(2) : 591-606.
[3] Al-Khafaji B.A.,Al-Bermani A.K. .2014 .Comparative Study of stem Anatomy for some Poa L. Species (Poaceae) in Iraq. Kufa J. Agri. Sci., 6(4) : 1-15.
[4] Anjum P.,Qaiser M. .2012 .Pollen flora of Pakistan-LXIX. Poaceae. , 44(2) : 747-756.
[5] Apóstolo N.M.,Luna A.L.,Yormann G.E. .2022 .Morphoanatomy of Bambusa multiplex, B. tuldoides and B. vulgaris cv. vittata culm leaves (Poaceae-BambusoideaeBambuseae). Flora, 297 : 152169.
[6] Banan S.A.,Al-Watban A.A.,Doaigey A.R.,Alsahli A.A.,El-Zaidy M. .2019 .Anatomical adaptations in species of Poaceae growing in Al-Hair region of Riyadh, Saudi Arabia. , 13(7) : 201-208.
[7] Cope T.A.,Ali E. & S.I. .1982 .. , 1(178) : .
[8] De Micco G.,Aronne G. .2012 .Morpho-anatomical traits for plant adaptation to drought. Plant responses to drought stress: from morphological to molecular features. , : 37-61.
[9] Ellis R.P. .1979 .A procedure for standardizing comparative leaf anatomy in the Poaceae. II. The epidermis as seen in surface view. Bothalia., 12(4) : 641-671.
[10] Erwin D.M.,Stockey R.A. .1991 .Silicified monocotyledons from the Middle Eocene Princeton chert (Allenby Formation) of British Columbia, Canada. , 70(1-2) : 147-162.
[11] Hameed M.,Nawaz T.,Ashraf M.,Tufail A.,Kanwal H.,Ahmad M.S.A.,Ahmad I. .2012 .Leaf anatomical adaptations of some halophytic and xerophytic sedges of the Punjab. , 44 : 159-164.
[12] Hammer D.A.,Harper P.D.,Ryan P.D. .2001 .PAST: Paleontological statistics software package for education and data analysis. Palaeontol., 4(1) : 9.
[13] Hassan K.,Amin A.,Ellmouni F.,Abbas H. .2022 .Taxonomic revision and anatomical studies of the genus Aegilops L. (poaceae) with sectional confirmation. Agr. Res. Dev., 36(3) : 342-355.
[14] Jamro S.,Channa F.N.,Dars G.H.,Ansari K.,Krakauer N.Y. .2020 .Exploring the evolution of drought characteristics in Balochistan, Pakistan. , 10(3) : 913-927.
[15] Kellogg E.A. .2015 .Flowering plants. Monocots: Poaceae, 13 : .
[16] Kim K.,Labbé N.,Warren J.M.,Elder T.,Rials T.G. .2015 .Chemical and anatomical changes in Liquidambar styraciflua L. xylem after long term exposure to elevated CO2. , 198 : 179-185.
[17] Kumar S.,Nautiyal S.,Bot India. Int. J. .2017 .Leaf anatomy of two genera of tribe Eragrostideae (Poaceae) from Mandalforest of Kedarnath wildlife sanctuary. , 2(5) : 50-55.
[18] Leandro V.,Manvailer V.,C. de Oliveira Arruda E.,Scremin-Dias E. .2022 .Pantanal flood pulse reveals constitutive and plastic features of two wild rice species (Poaceae, Oryzoideae): Implications for taxonomy, systematics, and phylogenetics. Rev. Bras. Bot., 45(4) : 1261-1278.
[19] Londoño X.,Camayo G.C.,Riaño N.M.,López Y. .2002 .Characterization of the anatomy of Guadua angustifolia (Poaceae: Bambusoideae) culms. Bamboo. Sci. Cult, 16(1) : 18-31.
[20] Mabel A.F.,Johnson A.A.,Temitope O.O. .2013 .Petiole anatomy of some species of Asteraceae in southwest Nigeria. Afr. J. Plant Sci., 7(12) : 608-612.
[21] Makesh-Kumar B.,Stephan J.,Kumar P. .2022 .Comparative anatomical study of the grasses in the range lands of Kovilpatti, Tamil Nadu of India.. , : .
[22] McKim S.M. .2019 .How plants grow up. J. Integr. Plant Biol, 61(3) : 257-277.
[23] Mohtashamian M.,Hajishirkia'ee F.A.,Fatehi F.,Rastegar A.,J. Bot. A. .2022 .Petiole anatomy: a contribution to the taxonomy of Acer L. (Sapindaceae) in Iran. , 6 : 1-10.
[24] Mousa M.O.,Abood N.M.,Shahatha S.S.,Alawadi H.F.N. .2021 .Anatomical study of the stems of some wild species of Poaceae family in the Western Desert. In: IOP Conference Series: Earth Environ. Sci., 735(1) : 12-51.
[25] Nazish M.,Althobaiti A.T. .2022 .Palyno-morphological characteristics as a systematic approach in the identification of halophytic Poaceae species from a saline environment. Plants, 11(19) : 2-18.
[26] Ola H.A.E.,Reham E.F.,Eisa S.S.,Habib S.A. .2012 .Morpho-anatomical changes in salt stressed kallar grass (Leptochloa fusca L. Kunth). Res. J. Agric. Biol. Sci., 8(2) : 158-166.
[27] Raees K.,Abidin S.,Mumtaz A.S.,Jamsheed S.,Ullah H. .2017 .Comparative leaf and pollen micromorphology on some Grasses taxa (Poaceae) distributed in Pakistan. Int. J. Nat. Life Sci., 1(2) : 72-82.
[28] Rafique T.,Hameed M.,Naseer M.,Rafique R.,Sadiq R.,Zikrea A.,Sajjad M.R.,Environ J. .2021 .Comparative leaf anatomy of grasses (Poaceae) in Faisalabad region of Pakistan. , 30(6) : 5701-5709.
[29] Saleem M. .1990 .Autecological characteristics of Chrysopogon aucheri and Cymbopogon jwarancusa, dominant rangeland grasses in Baluchistan. , 6464 : 1-103.
[30] Shamah A.B.,Ahlam A.A.W.,Abdullah R.D.,Abdulaziz A.A.,Mohamed E.Z. .2019 .Anatomical adaptations in species of Poaceae growing in Al-Ha'ir region of Riyadh, Saudi Arabia. , 13(7) : 201-208.
[31] Singh A.P.,Parabia M. .2003 .The floral diversity of Gujarat State: A review. Ind, 129(12) : 1461-1469.
[32] Siqueiros-Delgado M. .2007 .Culm anatomy of Bouteloua and relatives (Gramineae: Chloridoideae: Boutelouinae). Acta Bot, 78 : 39-54.
[33] . .. Missouri Botanical Garden, 18 : .
[34] Uga Y.,Ebana K.,Abe J.,Morita S.,Okuno K.,Yano M. .2009 .Variation in root morphology and anatomy among accessions of cultivated rice (Oryza sativa L.) with different genetic backgrounds. Breed. Sci., 59(1) : 87-93.
[35] Wells C.L.,Pigliucci M. .2000 .Adaptive phenotypic plasticity: The case of heterophylly in aquatic plants. Perspect. Plant Ecol. Evol. Syst., 3(1) : 1-18.
[36] Wooller M.J. .2002 .Fossil grass cuticles from lacustrine sediments: A review of methods applicable to the analysis of tropical African lake cores. , 12(1) : 97-105.
[37] Yang C.,Zhang X.,Li J.,Bao M.,Ni D.,Jr J.L. Seago .2014 .Anatomy and histochemistry of roots and shoots in wild rice (Zizania latifolia Griseb. J. Bot., : 1-9.
[38] Yang C.,Zhang X.,Zhou C.,Jr J.L. Seago .2011 .Root and stem anatomy and histochemistry of four grasses from the Jianghan Floodplain along the Yangtze River, China. , 206(7) : 653-661.
Citations
Citations are not available for this document.
0

Citations

0

Downloads

8

Views