Moreover, it is known that a particular GRC was repeatedly recruited during evolution. Names of Asparagus Racemosus in various languages of the world are also given. It is called m odification of leaves. They can store water for future use. List of various diseases cured by Asparagus Racemosus. A phylloclade is one of the aerial stem modifications that flattened stem of several internodes functioning as a leaf. Lathyrus aphaca (wild pea) (2) Leaf spine - Leaves or any part of … How Asparagus Racemosus is effective for various diseases is listed in repertory format. The particle size of 0-h milled powder ranged from 4.5 to 96.4 μm with a mean diameter (D 0.5) as 62.3 μm. The leaf modifications are of the following types. Tendrils . Uses, Benefits, Cures, Side Effects, Nutrients in Asparagus Racemosus. Here, we investigated the evolution of cladodes to elucidate the mechanisms at play in the diversification of shoot morphology. Based on these studies, we discuss how flat structures have evolved and morphologically diversified in Asparagus cladodes, which are leaf-like organs at the axils of scale leaves. Modification of leaves - Whe n leaf is modified in different structure. Sometimes these modifications are in response to certain environmental conditions. Modification of adventitious root Tuberous roots are without any definite shape; example:Sweet potato. Genetically modified vegetables have been engineered to possess qualities that are not naturally present in the food. Cladodes, leaf-like organs in asparagus, ... underpin the notion that the co-option and modification of the key GRC overseeing the shoot and/or leaf development may drive Here the stem becomes flattened, fleshy, leaf-like structure. In Casuarina, Tamarix, Asparagus, Ruscus, etc., the leaves are reduced to scales. Asparagus leaf by-product powder with different particle size for different time of milling is shown in Table 1, with 10%, 50% and 90% pass values. Nodulose roots become swollen near the tips; example: turmeric. The genus Asparagus is unusual in producing axillary, determinate organs called cladodes, which may take on either a flattened or cylindrical form. In weak stemmed plants, the entire leaf or any part of it modify into tendrils. with our findings from Asparagus, underpin the notion that the co-option and modification of the key GRC overseeing the shoot and/or leaf development may drive the acquisition of new organ type or form during plant evolution. (1) Leaf tendril - In this, whole leaf is modified into a wire like structure which is called leaf tendril Eg. Here, we discuss the modification and co-option of GRN for the establishment of adaxial–abaxial (ad–ab) polarity, using two examples: Juncus unifacial leaves, in which leaf blades have only the abaxial identity, and Asparagus cladodes, which are leaf-like organs in the axils (Yamaguchi et al., 2010; Nakayama et al., 2012a). Stilt roots arise from the first few nodes of the stem. In many plants, leaves get modified to perform some special functions other than the normal ones, such as photosynthesis and transpiration. Fasciculated root (tuberous root) occur in clusters at the base of the stem; example: asparagus, dahlia. If the entire leaf or a part of leaf undergoes permanent change to perform new functions suitable for the environment, it is called leaf modification. 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